Institute of Physical Chemistry, Clausthal University of Technology, Arnold-Sommerfeld-Str. 4, D-38678 Clausthal-Zellerfeld, Germany.
Langmuir. 2010 Aug 17;26(16):13162-7. doi: 10.1021/la101697r.
Coatings with vertical gradients in composition were produced by drying an aqueous polymer dispersion containing both charged and neutral particles. After drying, the neutral component was enriched at the film/air interface. The spontaneous vertical segregation between the two types of particles goes back to a difference in collective diffusivity. As the film dries, a layer enriched in polymer develops at the top. Due to their mutual repulsion, charged spheres escape from this layer more quickly than their neutral counterparts. Provided that the total time of drying is between the times of diffusion for the two types of particles (approximately H(0)(2)/D(c) with H(0) the initial film thickness and D(c) the collective diffusivity of the respective species), a concentration gradient persists after the film has turned dry. This effect can be used to create a functionally graded material (FGM) in a single coating step.
通过干燥含有带电和中性粒子的水性聚合物分散体,可以制备具有成分垂直梯度的涂层。干燥后,中性成分在膜/空气界面富集。两种类型粒子之间自发的垂直分离可归因于集体扩散率的差异。随着膜的干燥,顶部会形成一层富含聚合物的层。由于它们之间的相互排斥,带电球体比其中性对应物更快地逃离该层。只要干燥的总时间介于两种类型粒子的扩散时间之间(大约为 H(0)(2)/D(c),其中 H(0)是初始膜厚,D(c)是各自物种的集体扩散率),那么在膜变干后,浓度梯度就会持续存在。这种效应可用于在单个涂层步骤中创建功能梯度材料(FGM)。